## Abstract During adaptation to an increase in ambient salinity (2–20 ppt) the estuarine clam __Rangia cuneata__ enlarges the pool of free amino acids in adductor muscle fibers by more than five‐fold (>300 μM/gm dry wt). The process can occur under anaerobic conditions, but oxygen is critical to s
Salt and water balance in the oligohaline clam,Rangia cuneata I. Anisosmotic extracellular regulation
✍ Scribed by Henry, Raymond P. ;Mangum, Charlotte P.
- Publisher
- John Wiley and Sons
- Year
- 1980
- Tongue
- English
- Weight
- 635 KB
- Volume
- 211
- Category
- Article
- ISSN
- 0022-104X
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✦ Synopsis
Abstract
The euryhaline mollusc Rangia cuneata maintains blood NaCl above that in the ambient medium in the range 0–2 ppt salinity and below ambient in the range 12–24 ppt. A hyperosmotic condition of the blood found at low salinity disappears at 12–16 ppt, and the blood medium‐difference becomes labile at high salinity. Hypersaline regulation of the blood at low salinity is accompanied by increased oxygen uptake, both in intact animals and in isolated gill and mantle tissue. However, only mantle andnot gill oxygen uptake is depressed at low salinity by ouabain, a specific inhibitor of the Na^+^ + K^+^ ATPases. These findings, together with other results on enzyme activity and the ionic effects on enzyme inhibition, suggest that hyperosmotic regulation of the blood at low salinity involves the absorption of NaCl from the medium, and that the process requires both oxidative metabolism and unimpaired functioning of the Na^+^ + K^+^ ATPases. The excretion of ammonia is also, depressed by ouabain, suggesting an exchange of Na^+^ and NH~4~^+^. The NH~4~^+^ may arise during deamination of intracellular free amino acids. The size of the free amino acid pool in gill, mantle and adductor muscle, varies directly with ambient salinity. Although the evidence is less complete, we also suggest that the hyposaline condition of the blood at high salinity results from an active process, and depends upon the uninhibited activity of the Na^+^ + K^+^ ATPases.
📜 SIMILAR VOLUMES
## Abstract During adaptation to low salinity (from 20 to 2 ppt), the estuarine clam __Rangia cuneata__ reduces the size of a pool of free amino acids in adductor muscle fibers, presumably to control cell volume. The levels of both free amino acids and ammonia in the blood increase, but the rise in